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葡萄基本螺旋-环-螺旋(bHLH)转录因子正向调控拟南芥中的CBF途径并赋予其对冷胁迫的耐受性。

The grapevine basic helix-loop-helix (bHLH) transcription factor positively modulates CBF-pathway and confers tolerance to cold-stress in Arabidopsis.

作者信息

Xu Weirong, Zhang Ningbo, Jiao Yuntong, Li Ruimin, Xiao Dongming, Wang Zhenping

机构信息

School of Agronomy, Ningxia University, Yinchuan, 750021, Ningxia, People's Republic of China,

出版信息

Mol Biol Rep. 2014 Aug;41(8):5329-42. doi: 10.1007/s11033-014-3404-2. Epub 2014 May 24.

Abstract

Basic helix-loop-helix (bHLH)-type transcription factors play diverse roles in plant physiological response and stress-adaptive regulation network. Here, we identified one grapevine bHLH transcription factor from a cold-tolerant accession 'Heilongjiang seedling' of Chinese wild Vitis amurensis (VabHLH1) as a transcriptional activator involved in cold stress. We also compared with its counterpart from a cold-sensitive Vitis vinifera cv. Cabernet Sauvignon (VvbHLH1). These two putative proteins are characterized by the presence of the identically conserved regions of 54 amino acid residues of bHLH signature domain, and shared 99.1% amino acid identity, whereas several stress-related cis-regulatory elements located in both promoter regions differed in types and positions. Expressions of two bHLHs in grapevine leaves were induced by cold stress, but evidently differ between two grapevine genotypes upon cold exposure. Two grapevine bHLH proteins were exclusively localized to the nucleus and exhibited strong transcriptional activation activities in yeast cells. Overexpression of either VabHLH1 or VvbHLH1 transcription factor did not affect the growth and development of transgenic Arabidopsis plants, but enhanced tolerance to cold stress. The improved tolerance in VabHLH1- or VvbHLH1-overexpressing Arabidopsis plants is associated with multiple physiological and biochemical changes that occurred during the time-course cold stress. These most common changes include the evaluated levels of proline, decreased amounts of malondialdehyde and reduced membrane injury as reflected by electrolyte leakage. VabHLH1 and VvbHLH1 displayed overlapping, but not identical, roles in activating the corresponding CBF cold signaling pathway, especially in regulating the expression of CBF3 and RD29A. Our findings demonstrated that two grapevine bHLHs act as positive regulators of the cold stress response, modulating the level of COR gene expression, which in turn confer tolerance to cold stress.

摘要

基本螺旋-环-螺旋(bHLH)型转录因子在植物生理反应和胁迫适应性调控网络中发挥着多种作用。在此,我们从中国野生山葡萄‘黑龙江实生苗’这一耐寒品种中鉴定出一个葡萄bHLH转录因子(VabHLH1),它是参与低温胁迫的转录激活因子。我们还将其与来自冷敏感葡萄品种赤霞珠的对应蛋白(VvbHLH1)进行了比较。这两个推定蛋白的特征是具有bHLH特征结构域中54个氨基酸残基的相同保守区域,氨基酸同一性为99.1%,然而位于两个启动子区域的几个与胁迫相关的顺式调控元件在类型和位置上有所不同。葡萄叶片中两个bHLH的表达受低温胁迫诱导,但在低温处理后,两个葡萄基因型之间明显不同。两个葡萄bHLH蛋白都仅定位于细胞核,并在酵母细胞中表现出强大的转录激活活性。过表达VabHLH1或VvbHLH1转录因子均不影响转基因拟南芥植株的生长发育,但增强了其对低温胁迫的耐受性。在过表达VabHLH1或VvbHLH1的拟南芥植株中,耐受性的提高与低温胁迫过程中发生的多种生理生化变化有关。这些最常见的变化包括脯氨酸含量升高、丙二醛含量降低以及电解质渗漏反映的膜损伤减轻。VabHLH1和VvbHLH1在激活相应的CBF冷信号通路中发挥重叠但不完全相同的作用,尤其是在调节CBF3和RD29A的表达方面。我们的研究结果表明,两个葡萄bHLH作为低温胁迫反应的正调控因子,调节COR基因的表达水平,进而赋予对低温胁迫的耐受性。

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